Wave-head Resistor & Wave Tail Resistor
Tube-Type Wave-Head Resistors: Customizable Copper Resistors for Impulse Generators
Tube-type wave-head resistors are specialized components used in legacy impulse voltage generators for precise waveform shaping. Their pure copper construction ensures excellent conductivity and thermal performance in high-voltage applications.
Key Features
Material: High-purity copper tube construction
Customization: Adjustable dimensions, resistance values, and colors
Application: Wave-front shaping in impulse test systems
Compatibility: Designed for traditional impulse generator designs
Technical Specifications
Parameter | Capability |
---|---|
Base Material | Oxygen-free copper (99.9% purity) |
Resistance Range | Customizable based on application requirements |
Dimensions | Tailored to fit generator specifications |
Color Options | Available in standard or custom colors |
Voltage Rating | Designed for high-voltage impulse applications |
Applications in Impulse Testing
These resistors are particularly used for:
Wavefront Control: Precise adjustment of impulse wave shapes
Legacy System Maintenance: Replacement parts for older generator designs
Custom Test Setups: Specialized waveform requirements
Design Advantages
Thermal Performance: Copper construction enables excellent heat dissipation
Durability: Robust tubular design withstands repeated impulses
Precision: Consistent performance for accurate test results
Customization Options
Manufacturers can tailor these resistors to specific needs:
Physical Dimensions: Length, diameter, and mounting configuration
Electrical Properties: Precise resistance values for circuit matching
Visual Identification: Color coding for system organization
Maintenance Considerations
Regular inspection for oxidation or deformation
Periodic resistance verification
Proper cleaning of copper surfaces
Conclusion
Tube-type wave-head resistors remain essential components for maintaining and operating traditional impulse voltage test systems. Their customizable nature allows for precise adaptation to specific testing requirements while providing reliable performance in high-voltage environments.